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Year 2017, Volume: 13 Issue: 2, 401 - 405, 11.05.2017
https://doi.org/10.18466/cbayarfbe.308508

Abstract

References

  • Park, K.; Han, I. H. Effect of Cr2O3 addition on the microstructure and electrical properties of Mn-Ni-Co oxides NTC thermistors. J. Electroceram. 2006; 17, 1069-1073.

Electrical Characterisation of Ni0.5Co0.3Cr0.2Mn2O4 Thermistors

Year 2017, Volume: 13 Issue: 2, 401 - 405, 11.05.2017
https://doi.org/10.18466/cbayarfbe.308508

Abstract


Negative
temperature coefficient (NTC) thermistors are ceramic semiconductors derived
from metal oxides such as Mn, Ni, Co, Cu, Cr, Fe etc. The electrical resistance
of NTC thermistors decrease with increasing temperature. In industrial
applications, the desired material constant (B) of NTC thermistors is in the
range of 2000 to 5000 K and the sensitivity coefficient (α) is in the range of
(-2.2) to (-5.5) %/K. The electrical properties of NTC thermistors can be
changed significantly by the type and molar ratio of metal oxide additions as
well as the selected process parameters during manufacturing of samples. In this study, the
effect of Cr2O3 addition on the electrical properties of Mn-Ni-Co-O
NTC
thermistors sintered at 1100 oC for 5 hours was investigated. The
electrical resistance was measured in a temperature programmable furnace
between 25 and 85oC in steps of 0.1oC. The material
constant “B”, the activation energy “Ea” and the sensitivity
coefficient “α” values were calculated. The aging behaviour of Mn–Ni–Co–Cr-O NTC
ceramics was also investigated by electrical resistivity measurement after
accelerated aging.

References

  • Park, K.; Han, I. H. Effect of Cr2O3 addition on the microstructure and electrical properties of Mn-Ni-Co oxides NTC thermistors. J. Electroceram. 2006; 17, 1069-1073.
There are 1 citations in total.

Details

Subjects Engineering
Journal Section Articles
Authors

Berat Yüksel Price This is me

Publication Date May 11, 2017
Published in Issue Year 2017 Volume: 13 Issue: 2

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APA Yüksel Price, B. (2017). Electrical Characterisation of Ni0.5Co0.3Cr0.2Mn2O4 Thermistors. Celal Bayar University Journal of Science, 13(2), 401-405. https://doi.org/10.18466/cbayarfbe.308508
AMA Yüksel Price B. Electrical Characterisation of Ni0.5Co0.3Cr0.2Mn2O4 Thermistors. CBUJOS. June 2017;13(2):401-405. doi:10.18466/cbayarfbe.308508
Chicago Yüksel Price, Berat. “Electrical Characterisation of Ni0.5Co0.3Cr0.2Mn2O4 Thermistors”. Celal Bayar University Journal of Science 13, no. 2 (June 2017): 401-5. https://doi.org/10.18466/cbayarfbe.308508.
EndNote Yüksel Price B (June 1, 2017) Electrical Characterisation of Ni0.5Co0.3Cr0.2Mn2O4 Thermistors. Celal Bayar University Journal of Science 13 2 401–405.
IEEE B. Yüksel Price, “Electrical Characterisation of Ni0.5Co0.3Cr0.2Mn2O4 Thermistors”, CBUJOS, vol. 13, no. 2, pp. 401–405, 2017, doi: 10.18466/cbayarfbe.308508.
ISNAD Yüksel Price, Berat. “Electrical Characterisation of Ni0.5Co0.3Cr0.2Mn2O4 Thermistors”. Celal Bayar University Journal of Science 13/2 (June 2017), 401-405. https://doi.org/10.18466/cbayarfbe.308508.
JAMA Yüksel Price B. Electrical Characterisation of Ni0.5Co0.3Cr0.2Mn2O4 Thermistors. CBUJOS. 2017;13:401–405.
MLA Yüksel Price, Berat. “Electrical Characterisation of Ni0.5Co0.3Cr0.2Mn2O4 Thermistors”. Celal Bayar University Journal of Science, vol. 13, no. 2, 2017, pp. 401-5, doi:10.18466/cbayarfbe.308508.
Vancouver Yüksel Price B. Electrical Characterisation of Ni0.5Co0.3Cr0.2Mn2O4 Thermistors. CBUJOS. 2017;13(2):401-5.